Abstract:
A sheet processing apparatus includes: an ejection tray; an internal tray; a first conveyor to convey a sheet medium in a first direction in which the sheet medium is ejected to the ejection tray; a second conveyor to come into contact with and separate from sheet media stacked on the internal tray to convey the sheet media in a second direction different from the first direction; a crimp binder downstream from the internal tray in the second direction to execute crimp binding on the sheet media stacked on the internal tray; and control circuitry. When a subsequent sheet medium, which is subsequent to a preceding sheet medium of the sheet media stacked on the internal tray, is conveyed in the first direction while contacting the preceding sheet medium, the control circuitry causes the crimp binder to press a downstream end of the preceding sheet medium in the second direction.
Abstract:
A media processing apparatus includes: an internal tray; an ejection tray; a first conveyor to convey a sheet medium in a first conveyance direction leading to the ejection tray via the internal tray; a second conveyor to convey the medium in a second conveyance direction; a binder including a pair of clampers to clamp sheet media stacked on the internal tray and being switchable among an out-of-contact state in which the clampers are out of contact, a clamping state in which the media are clamped by the clampers, and a binding state in which the media are pressed and bound by the clampers. The circuitry switches the binder into the clamping state when an (N+1)-th sheet medium is conveyed in the first direction while contacting an N-th sheet medium in a state in which N sheets of sheet media are stacked on the internal tray, N being a natural number.
Abstract:
A sheet folder includes a conveyor conveying a sheet, a first folding roller and a second folding roller that form a first nip, a third folding roller forming a second nip with the second folding roller, a first guide movable between a first guide posture and a first retracted posture, a second guide movable between a second guide posture and a second retracted posture, and a motor. The motor rotates the second folding roller forward to convey the sheet toward the first nip, reverse to convey the sheet toward the second nip, moves the first guide to arrange in the first guide in the first guide posture or the first retracted posture, and moves the second guide to arrange the second guide in the second guide posture or the second retracted posture.
Abstract:
A sheet folding apparatus includes a conveyor, a first folding roller, a second folding roller, a third folding roller, a guide, a motor, and a driving force transmission mechanism. The motor causes the second folding roller to perform either forward rotation in which the second folding roller rotates to convey a sheet on a main conveying path in a conveying direction and to convey the sheet on a reflux conveying path from a joining position toward a branching position or backward rotation in a direction opposite to the forward rotation. The driving force transmission mechanism rotates the guide toward a first posture from a second posture in conjunction with the forward rotation of the second folding roller and rotates the guide from the first posture toward the second posture in conjunction with the backward rotation of the second folding roller.
Abstract:
A sheet conveying device includes: a sheet housing unit that houses a sheet; a sheet conveying unit that conveys the sheet; a sheet detection unit that detects presence or absence of the sheet in the sheet housing unit; a sheet nipping unit that nips the sheet housed in the sheet housing unit; and a control unit. The control unit controls the sheet nipping unit to reach a nipping state to nip the sheet in the sheet housing unit upon the sheet detection unit detecting a sheet-present state, executes a power saving mode to stop supplying power to at least a part of the electric mechanisms when no drive command is input for a predetermined time, and controls the sheet nipping unit to cancel the nipping state before execution of the power saving mode.
Abstract:
A transport apparatus which transports a sheet-like medium along a transport direction while one surface of the sheet-like medium is sucked to a holding surface, includes side members having opposed faces which are opposed to a portion of the holding surface at a position near the edge of the holding surface in a width direction intersecting with the transport direction. The side members form spaces between the other surface of the sheet-like medium and the opposed faces when the sheet-like medium is transported in a state where edges of the sheet-like medium in the width direction are interposed between the opposed faces and the holding surface.
Abstract:
A via design apparatus for designing a via providing connections between a plurality of layers inside a multilayer board includes: a determination section that determines a value of a shape parameter indicating a shape of a via in the multilayer board, the via having a hole passing through the plurality of layers and a conductive section on a side wall of the hole; and a calculation section that calculates a value of impedance of the via according to the value of the shape parameter.
Abstract:
A method for forming a film pattern disposed adjacent to a pattern non-forming region by coating a pattern forming region with a functional liquid, includes (a) forming a liquid repellent film by coating the pattern non-forming region with a droplet containing a liquid repellent material having repellency to the functional liquid, and (b) forming the film pattern by coating the pattern forming region adjacent to the liquid repellent film with the functional liquid. The step (a) of forming of the liquid repellent film and the step (b) of forming of the film pattern are alternately repeated at least two times, respectively.
Abstract:
A method for producing a multilayered wiring substrate includes forming a lyophobic area on a first conductive layer, forming an insulating layer with an opening portion on the first conductive layer by applying a functional liquid containing an insulating layer forming material on a periphery of the lyophobic area, laminating the first conductive layer and a second conductive layer via the insulating layer, and electrically connecting the first and the second conductive layers to each other via the opening portion formed in the insulating layer. In the method, when forming the insulating layer, the functional liquid is applied such that an angle of a portion of the functional liquid in contact with the lyophobic area becomes larger than a forward contact angle of the functional liquid, thereby allowing a position of the portion of the functional liquid in contact with the lyophobic area to move inside the lyophobic area to form the opening portion having an opening size smaller than a size of the lyophobic area.
Abstract:
A wiring pattern forming method comprises: relatively moving a droplet discharging head and a substrate, each in a predetermined direction; discharging a liquid material in a form of droplet onto the substrate from a plurality of discharging nozzles formed on the droplet discharging head; forming a predetermined wiring pattern on the substrate; and forming an end portion of a wiring pattern in a tapered shape, or a bent portion of a wiring pattern in a curved shape.